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QoS improvement with an optimum controller selection for software-defined networks

机译:通过为软件定义的网络选择最佳控制器来提高QoS

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摘要

The software-defined networking (SDN) paradigm has simplified the management of computer networks by decoupling data and control planes. Moreover, the separation of the data and control planes has transitioned network complexity from traditional devices to controllers; therefore, controllers have become indispensable entities in SDN. Controllers have multiple features and direct the network from a central point and respond to updates to topological changes. However, the supportive capability of these features is strong in one controller but weak in another. Due to several controllers and each controller having a set of features, selecting an optimal SDN controller can be considered to be a multi-criteria decision-making (MCDM) problem. Herein, a two-step approach is proposed for SDN controller selection. First, the controllers are ranked with analytical network process (ANP) according to their qualitative features which influence the performance of these controllers and then a performance comparison is performed to check for the QoS improvement. The controller with a high-weight value from the feature-based comparison is quantitatively analysed by experimental analysis. The main contribution of this paper is checking the applicability of the ANP for controller selection in SDN considering its features and performance analysis in real-world Internet and Brite topologies. The simulation results show that the controller computed through the proposed approach outperforms the controller selected with existing approaches. The selection of an optimum controller with ANP results in a reduction of topology discovery time and delay in the normal and traffic load scenario. Similarly, an increase in throughput with a reasonable utilization of the central processing unit (CPU) is observed for the proposed controller.
机译:通过将数据平面和控制平面分离,软件定义网络(SDN)范例简化了计算机网络的管理。此外,数据平面和控制平面的分离已将网络复杂性从传统设备转变为控制器。因此,控制器已成为SDN中必不可少的实体。控制器具有多种功能,可从中心指向网络并响应拓扑变化的更新。但是,这些功能的支持能力在一个控制器中很强,而在另一个控制器中则很弱。由于多个控制器和每个控制器具有一组功能,因此选择最佳的SDN控制器可被视为多准则决策(MCDM)问题。在此,针对SDN控制器的选择提出了一种两步法。首先,根据影响其性能的定性特征,对控制器进行分析网络处理(ANP)分级,然后进行性能比较以检查QoS的提高。通过实验分析对基于特征的比较中具有高权重值的控制器进行定量分析。本文的主要贡献是考虑到ANP在SDN中控制器选择的适用性,考虑到其在现实Internet和Brite拓扑中的功能和性能分析。仿真结果表明,该方法计算出的控制器性能优于现有方法选择的控制器。选择具有ANP的最佳控制器可以减少拓扑发现时间并减少正常和流量负载情况下的延迟。类似地,对于建议的控制器,在合理利用中央处理器(CPU)的情况下,可以提高吞吐量。

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